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Novel Chemical Architectures Based on Beta-Cyclodextrin Derivatives Covalently Attached on Polymer Spheres

机译:基于β-环糊精衍生物的新型化学架构共价连接在聚合物球上

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摘要

This study presents the synthesis and characterization of polymer derivatives of beta-cyclodextrin (BCD), obtained by chemical grafting onto spherical polymer particles (200 nm) presenting oxirane functional groups at their surface. The polymer spheres were synthesized by emulsion polymerization of styrene (ST) and hydroxyethyl methacrylate (HEMA), followed by the grafting on the surface of glycidyl methacrylate (GMA) by seeded emulsion polymerization. The BCD-polymer derivatives were obtained using two BCD derivatives with hydroxylic (BCD-OH) and amino groups (BCD-NH2). The degree of polymer covalent functionalization using the BCD-OH and BCD-NH2 derivatives were determined to be 4.27 and 19.19 weight %, respectively. The adsorption properties of the materials were evaluated using bisphenol A as a target molecule. The best fit for the adsorption kinetics was Lagergren’s model (both for Qe value and for R2) together with Weber’s intraparticle diffusion model in the case of ST-HEMA-GMA-BCD-NH2. The isothermal adsorption evaluation indicated that both systems follow a Langmuir type behavior and afforded a Qmax value of 148.37 mg g−1 and 37.09 mg g−1 for ST-HEMA-GMA-BCD-NH2 and ST-HEMA-GMA-BCD-OH, respectively. The BCD-modified polymers display a degradation temperature of over 400 °C which can be attributed to the existence of hydrogen bonds and BCD thermal degradation pathway in the presence of the polymers.
机译:该研究介绍了β-环糊精(BCD)的聚合物衍生物的合成和表征,通过化学接枝在其表面上呈递氧化乙烷官能团的球形聚合物颗粒(200nm)。通过苯乙烯(ST)和羟乙基甲酸羟乙酯(HEMA)的乳液聚合合成聚合物球,然后通过接种乳液聚合在甲基丙烯酸缩水甘油酯(GMA)表面上接枝。使用具有羟基(BCD-OH)和氨基(BCD-NH2)的两个BCD衍生物获得BCD-聚合物衍生物。使用BCD-OH和BCD-NH 2衍生物的聚合物共价官能化程度分别测定为4.27和19.19重量%。使用双酚A作为靶分子评价材料的吸附性质。用于吸附动力学的最佳拟合是Lagergren的模型(既为Qe的值和R2)连同ST-HEMA-GMA-BCD-NH2的情况下韦伯的内扩散模型。等温吸附评估表明,两种系统遵循Langmuir型行为,并为ST-hema-GMA-BCD-NH2和ST-HEMA-GMA-BCD-OH和ST-HEMA-GMA-BCD-OH提供148.37mg G-1和37.09mg G-1的Qmax值, 分别。 BCD改性聚合物显示出超过400℃的降解温度,其可归因于在聚合物存在下存在氢键和BCD热降解途径。

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